Department of Pathology and Medical Biology, Stem Cells and Tissue Engineering Group, University of Groningen, University Medical Center Groningen, Hanzeplein 1, 9713 GZ Groningen, The Netherlands.
Biomaterials. 2012 Jul;33(20):5144-55. doi: 10.1016/j.biomaterials.2012.03.052. Epub 2012 Apr 9.
Intrarenal drug delivery from a hydrogel carrier implanted under the kidney capsule is an innovative way to induce kidney tissue regeneration and/or prevent kidney inflammation or fibrosis. We report here on the development of supramolecular hydrogels for this application. We have synthesized two types of supramolecular hydrogelators by connecting the hydrogen bonding moieties to poly(ethylene glycols) in two different ways in order to obtain hydrogels with different physico-chemical properties. Chain-extended hydrogelators containing hydrogen bonding units in the main chain, and bifunctional hydrogelators end-functionalized with hydrogen bonding moieties, were made. The influence of these hydrogels on the renal cortex when implanted under the kidney capsule was studied. The overall tissue response to these hydrogels was found to be mild, and minimal damage to the cortex was observed, using the infiltration of macrophages, formation of myofibroblasts, and the deposition of collagen III as relevant read-out parameters. Differences in tissue response to these hydrogels could be related to the different physico-chemical properties of the three hydrogels. The strong, flexible and slow eroding chain-extended hydrogels are proposed to be suitable for long-term intrarenal delivery of organic drugs, while the weaker, soft and fast eroding bifunctional hydrogel is eminently suitable for short-term, fast delivery of protein drugs to the kidney cortex. The favourable biological behaviour of the supramolecular hydrogels makes them exquisite candidates for subcapsular drug delivery, and paves the way to various opportunities for intrarenal therapy.
从植入肾包膜下的水凝胶载体中向肾脏内递药是一种诱导肾脏组织再生和/或预防肾脏炎症或纤维化的创新方法。我们在此报告了用于该应用的超分子水凝胶的开发。我们通过以两种不同的方式将氢键部分连接到聚乙二醇上来合成了两种类型的超分子水凝胶形成剂,以便获得具有不同物理化学性质的水凝胶。我们制备了含有氢键单元的主链链扩展水凝胶形成剂和末端官能化有氢键部分的双官能水凝胶形成剂。研究了这些水凝胶植入肾包膜下对肾皮质的影响。用浸润的巨噬细胞、肌成纤维细胞的形成和 III 型胶原的沉积作为相关的读出参数,发现这些水凝胶对皮质的总体组织反应是温和的,观察到的皮质损伤最小。这些水凝胶对组织的不同反应可能与三种水凝胶的不同物理化学性质有关。强韧、灵活且缓慢侵蚀的链扩展水凝胶被认为适合有机药物的长期肾脏内递药,而较弱、柔软且快速侵蚀的双官能水凝胶则非常适合蛋白质药物向肾皮质的短期快速递药。超分子水凝胶的良好的生物学行为使它们成为了非常适合于包膜下药物递药的候选物,并为肾脏内治疗开辟了各种机会。